arrow
Return

A physically based dynamic model for solid oxide fuel cells

delete2007-12-01
delete160
PRE
AI
C
Caisheng Wang *
M
M.H. Nehrir
DOI:10.1109/TEC.2007.895468delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
This paper presents a physically based dynamic model for tubular solid oxide fuel cells (SOFCs) based on the electrochemical and thermodynamic characteristics inside SOFC. The diffusion, material conservation,electrochemical, and thermodynamic equations are used to develop the SOFC model. The effect of temperature on the steady-state (V-I and P-I) characteristics of the SOFC model has been studied, and the model responses have been obtained for constant fuel flow as well as for constant fuel utilization operating modes. The dynamic characteristics of the model are investigated in small, medium, and large timescales, from milliseconds to minutes. The model has been implemented in MATLAB/Simulink and used to investigate the distributed generation applications of SOFCs.
Keywords:
constant fuel flow
constant fuel utilization
distributed generation
dynamic model
fuel cell
operating mode
solid oxide fuel cell (SOFC)
timescale

Journal

IEEE Transactions on Energy Conversion cover
IEEE Transactions on Energy Conversion
IF:
5.4
Papers:
6.8K
Citations:
1.5W

Organization

No organization information available
Cited Papers

Cited Papers

Discovery and Validation of New Potential Biomarkers for Early Detection of Colon Cancer
err2014-09-12
err0
errOAAI
errXavier Solé; Marta Crous-Bou; David Cordero; David Olivares; Elisabet Guinó; Rebeca Sanz-Pamplona; Francisco Rodriguez-Moranta; Xavier Sanjuan; Javier de Oca; Ramon Salazar; Victor Moreno
errShare
errSave
errShare
errSave
errShare
errSave
researcher View more